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四环素和金霉素在钾饱和与钙饱和土壤黏土、腐殖质及黏土-腐殖质复合体上的吸附作用

Sorption of tetracycline and chlortetracycline on K- and Ca-saturated soil clays, humic substances, and clay-humic complexes.

作者信息

Pils Jutta R V, Laird David A

机构信息

Agronomy Department, Iowa State University, 100 Osborne Drive, Ames, Iowa 50011, USA.

出版信息

Environ Sci Technol. 2007 Mar 15;41(6):1928-33. doi: 10.1021/es062316y.

Abstract

Tetracycline (TC) and chlortetracycline (CTC) are used extensively for growth promotion and therapeutic purposes in livestock production. The sorption of TC and CTC on clays, humic substances (HS), and clay-humic complexes (clay-HC) derived from two agricultural soils was quantified using dilute CaCl2 (Ca) and KCI (K) as background solutions. In all systems, the soil components sorbed > 96% of added tetracyclines. Strongest sorption was observed for clays, followed by HS, and then clay-HC. Greater sorption by the Ca systems than the K systems and decreased sorption with increasing pH suggests that cation bridging and cation exchange contribute to sorption. X-ray diffraction analysis showed that TC and CTC were sorbed in the interlayers of smectites and that the presence of HS reduced interlayer sorption of tetracyclines by smectites in clay-HC. The results indicate that tetracyclines are dominantly sorbed on soil clays and that HS in clay-HC either mask sorption sites on clay surfaces or inhibit interlayer diffusion of tetracyclines.

摘要

四环素(TC)和金霉素(CTC)在畜牧生产中被广泛用于促进生长和治疗目的。使用稀氯化钙(Ca)和氯化钾(K)作为背景溶液,对源自两种农业土壤的粘土、腐殖质(HS)以及粘土-腐殖质复合体(粘土-HC)对TC和CTC的吸附进行了定量分析。在所有体系中,土壤组分吸附了添加四环素的96%以上。观察到粘土的吸附最强,其次是HS,然后是粘土-HC。Ca体系的吸附比K体系更强,且随着pH值升高吸附降低,这表明阳离子桥连和阳离子交换有助于吸附。X射线衍射分析表明,TC和CTC吸附在蒙脱石的层间,并且HS的存在减少了粘土-HC中蒙脱石对四环素的层间吸附。结果表明,四环素主要吸附在土壤粘土上,并且粘土-HC中的HS要么掩盖了粘土表面的吸附位点,要么抑制了四环素的层间扩散。

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